Techniques for characterization of electrodes and electrochemical processes
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Bibliographic Information
Techniques for characterization of electrodes and electrochemical processes
(The Electrochemical Society series)
Wiley, c1991
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"A Wiley-Interscience publication."
Includes bibliographical references and index
Description and Table of Contents
Description
Written by leading authorities in their respective fields, this work presents review articles on in situ or quasi-in situ techniques for the characterization of electrodes and electrochemical processes - appropriate for surface or bulk phase analysis. The book is divided into two sections, covering in situ monitoring and characterization of structure and compositions of electrodes, electrolytes, and products during electrolysis in Part A, and electrochemical techniques and theoretical-modelling tools in Part B.
Table of Contents
- STRUCTURE AND COMPOSITION OF ELECTRODES AND ELECTROLYTES: Techniques for the Study of Solid Ionic Conductors
- Ellipsometry as an In Situ Probe for Study of Electrode Processes
- In Situ Characterization of Electrode Processes by Photothermal Deflection Spectroscopy
- Surface X-Ray Absorption Spectroscopy, EXAFS and NEXAFS for the In Situ and Ex Situ Study of Electrodes
- Surface-Enhanced Raman Spectroscopy
- In Situ Characterization of Electrodes by Neutron Scattering
- Diffraction Techniques for Determining the Structure of Electrolytes in the Liquid Phase
- Moessbauer Spectroscopy
- Laser Interferometry Study of Mass Transport Limitation in Electro-Deposition of Metals/Polymers. ELECTROCHEMICAL MEASUREMENT TECHNIQUES: An Introduction to Electrochemistry in Molten Salts
- Application of Electrochemical Impedance Spectroscopy in Electrochemistry and Corrosion Science
- Electrochemical Impedance Spectroscopy (EIS)- Application in Corrosion Science and Technology
- Numerical Techniques for Modeling Current Distribution at Plane or Flow-By Electrodes
- Experimental Simulation of Porous Electrodes
- Techniques for Study of Nucleation during Metal Electrodisposition.
by "Nielsen BookData"